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ADP3208

ON Semiconductor
Part Number ADP3208
Manufacturer ON Semiconductor
Description Synchronous Buck Controller
Published Jun 30, 2014
Detailed Description 7-Bit, Programmable, Dual-Phase, Mobile, CPU, Synchronous Buck Controller ADP3208 FEATURES Single-chip solution Fully co...
Datasheet PDF File ADP3208 PDF File

ADP3208
ADP3208


Overview
7-Bit, Programmable, Dual-Phase, Mobile, CPU, Synchronous Buck Controller ADP3208 FEATURES Single-chip solution Fully compatible with the Intel® IMVP-6+™ specifications Integrated MOSFET drivers Selectable 1- or 2-phase operation with up to 1 MHz per phase switching frequency Guaranteed ±8 mV worst-case differentially sensed core voltage error over temperature Automatic power-saving mode maximizes efficiency with light load during deeper sleep operation Soft transient control reduces inrush current and audio noise Active current balancing between output phases Independent current limit and load line setting inputs for additional design flexibility Built-in power-good blanking supports voltage identification (VID) on-the-fly transients 7-bit, digitally programmable DAC with 0.
3 V to 1.
5 V output Short-circuit protection with programmable latch-off delay Clock enable output delays the CPU clock until the core voltage is stable Output power or current monitor options 48-lead LFCSP GENERAL DESCRIPTION The ADP3208 is a highly efficient, multiphase, synchronous buck switching regulator controller.
With its integrated drivers, the ADP3208 is optimized for converting the notebook battery voltage into the core supply voltage required by high performance Intel processors.
An internal 7-bit DAC is used to read a VID code directly from the processor and to set the CPU core voltage to a value within the range of 0.
3 V to 1.
5 V.
The phase relationship of the output signals ensures interleaved 2-phase operation.
The ADP3208 uses a multimode architecture run at a programmable switching frequency and optimized for efficiency depending on the output current requirement.
The ADP3208 switches between single- and dual-phase operation to maximize efficiency with all load conditions.
The chip includes a programmable load line slope function to adjust the output voltage as a function of the load current so that the core voltage is always optimally positioned for a load transient.
The ADP3...



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